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非编码 RNA 在生理性心肌肥厚中的作用。

Non-coding RNAs in Physiological Cardiac Hypertrophy.

机构信息

Cardiac Regeneration and Ageing Lab, Institute of Cardiovascular Sciences, School of Life Science, Shanghai University, Shanghai, China.

Cardiovascular Division of the Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.

出版信息

Adv Exp Med Biol. 2020;1229:149-161. doi: 10.1007/978-981-15-1671-9_8.

Abstract

Non-coding RNA (ncRNA) is a class of RNAs that are not act as translational protein templates. They are involved in the regulation of gene transcription, RNA maturation and protein translation, participating in a variety of physiological and physiological processes. NcRNAs have important functions, and are recently one of the hotspots in biomedical research. Cardiac hypertrophy is classified into physiological cardiac hypertrophy and pathological cardiac hypertrophy. Different from pathological cardiac hypertrophy, physiological cardiac hypertrophy usually developed during exercise, pregnancy, normal postnatal growth, accompanied with preservation or improvement of systolic function, while no cardiac fibrosis. In this chapter, we will briefly introduce the definition, characteristics, and functions of ncRNAs, including miRNAs, lncRNAs, and circRNAs, as well as a summary of the existing bioinformatics online databases which commonly used in the study of ncRNAs. Specially, this chapter will be focused on the characteristics and the underlying mechanisms about physiological cardiac hypertrophy. Furthermore, the regulatory mechanism of ncRNAs in physiological hypertrophy and the latest research progress will be summarized. Taken together, exploring physiologic cardiac hypertrophy-specific ncRNAs might be a unique research perspective that provides new point of view for interventions in heart failure and other cardiovascular diseases.

摘要

非编码 RNA(ncRNA)是一类不作为翻译蛋白模板的 RNA。它们参与基因转录、RNA 成熟和蛋白质翻译的调控,参与多种生理和生理过程。ncRNA 具有重要的功能,是近年来生物医学研究的热点之一。心肌肥厚分为生理性心肌肥厚和病理性心肌肥厚。与病理性心肌肥厚不同,生理性心肌肥厚通常发生在运动、妊娠、正常出生后生长期间,伴随着收缩功能的保存或改善,而没有心肌纤维化。在本章中,我们将简要介绍 ncRNA(包括 miRNA、lncRNA 和 circRNA)的定义、特征和功能,以及常用于 ncRNA 研究的现有生物信息学在线数据库的概述。特别地,本章将重点介绍生理性心肌肥厚的特征和潜在机制。此外,还将总结 ncRNAs 在生理性肥厚中的调控机制及最新研究进展。综上所述,探索生理心肌肥厚特异性 ncRNA 可能是一个独特的研究视角,为心力衰竭和其他心血管疾病的干预提供了新的观点。

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